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Gaseous pollutant dispersion measurements on an wind tunnel model of a waste incinerator

机译:废物焚化炉风洞模型中的气体污染物扩散测量

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A wind tunnel study of plume rise and dispersion at a twin-stack waste incinerator has been carried out in the large stratified wind tunnel facility at the EnFlo Research Centre (university of Surrey). The model scale was 1 to 300 and measurements of mean scalar gas concentration were performed with a flame ionisation detector (FID) based system in a neutral boundary layer simulating a rural environment. Standard buoyancy scaling relationships were used to determine the discharge conditions at model scale. Mean plume heights, lateral and vertical spreads were obtained from the analysis of vertical and crossvind concentration profiles measured at different downstream distances from the sources. Effects of the wind direction with respect to the alignment of the two chimneys were investigated. Vertical concentration profiles showed a slight increase of the average plume height, as a consequence of the plumes interaction, when the two stacks were aligned along the wind direction. Experimental results have been compared with the standard ISCST2 gaussian code, with the ADMS2 integral model and with a modified version of the ISCST2 code.
机译:在EnFlo研究中心(萨里大学)的大型分层风洞设施中,进行了双堆废物焚化炉中烟羽上升和扩散的风洞研究。模型比例为1到300,并且使用基于火焰离子化检测器(FID)的系统在模拟乡村环境的中性边界层中进行平均标量气体浓度的测量。使用标准浮力比例关系来确定模型比例下的排放条件。平均烟羽高度,横向和纵向扩散是通过分析在距源不同下游距离处测得的垂直和交叉浓度分布图获得的。研究了风向对两个烟囱对准的影响。当两个烟囱沿风向排列时,垂直羽流分布图显示,由于羽流相互作用,平均羽流高度略有增加。实验结果已与标准ISCST2高斯代码,ADMS2积分模型以及ISCST2代码的修改版本进行了比较。

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